Characterization of Bi-Sb-Te powders prepared by wet bead milling
碩士 === 國立清華大學 === 材料科學工程學系 === 101 === Thermoelectric material which converts electrical energy into thermal energy directly, and vice versa, has been regarded as a potential energy conversion material. Recent studies have found nanostructured thermoelectric materials can create better thermoelect...
Main Authors: | , |
---|---|
Other Authors: | |
Format: | Others |
Language: | zh-TW |
Published: |
2013
|
Online Access: | http://ndltd.ncl.edu.tw/handle/96776317365959590797 |
id |
ndltd-TW-101NTHU5159013 |
---|---|
record_format |
oai_dc |
spelling |
ndltd-TW-101NTHU51590132015-10-13T22:06:57Z http://ndltd.ncl.edu.tw/handle/96776317365959590797 Characterization of Bi-Sb-Te powders prepared by wet bead milling 濕式珠磨法在Bi-Sb-Te熱電材料製備之應用研究 Lee, Tzu-Ting 李祖霆 碩士 國立清華大學 材料科學工程學系 101 Thermoelectric material which converts electrical energy into thermal energy directly, and vice versa, has been regarded as a potential energy conversion material. Recent studies have found nanostructured thermoelectric materials can create better thermoelectric properties and lead to better thermoelectric conversion efficiency. In this study, Bi-Sb-Te compounds nano-powders were prepared by wet bead milling process and pressed into a sample. The effects of processing conditions on thermoelectric properties of cold-pressed Bi-Sb-Te are investigated. In this study, Bi-Sb-Te powders of micro-meter size were first prepared by a planetary ball milling, and then refined into nano-size particles by wet beads milling method. Finally, these powders were pressed into a bulk at room temperature. We found some problems occurring during the wet-milling process. Bi-Sb-Te alloy powders prepared by wet bead milling are subjected to serious damage of crystal structure and oxidation. The oxidation affects the metallurgical properties of the Bi-Sb-Te material and crystal structure, results in specimen's compactness. Here, we added an additional hydrogen reduction process to recover the ground B-Sb-Te powders by removing the oxidized part and restoring the thermoelectric properties of the pressed Bi-Sb-Te compound. The results show that the Bi-Sb-Te powders have a (00l) preferred orientation and the Bi2Te3 crystal reveals laminar structure. The pressed Bi-Sb-Te with (00l) preferred orientation has enhanced electricity conductivity and thermal conductivity as well as thermoelectric figure-of-merit. Liao, Chien-Neng 廖建能 2013 學位論文 ; thesis 64 zh-TW |
collection |
NDLTD |
language |
zh-TW |
format |
Others
|
sources |
NDLTD |
description |
碩士 === 國立清華大學 === 材料科學工程學系 === 101 === Thermoelectric material which converts electrical energy into thermal energy directly, and vice versa, has been regarded as a potential energy conversion material. Recent studies have found nanostructured thermoelectric materials can create better thermoelectric properties and lead to better thermoelectric conversion efficiency. In this study, Bi-Sb-Te compounds nano-powders were prepared by wet bead milling process and pressed into a sample. The effects of processing conditions on thermoelectric properties of cold-pressed Bi-Sb-Te are investigated.
In this study, Bi-Sb-Te powders of micro-meter size were first prepared by a planetary ball milling, and then refined into nano-size particles by wet beads milling method. Finally, these powders were pressed into a bulk at room temperature. We found some problems occurring during the wet-milling process. Bi-Sb-Te alloy powders prepared by wet bead milling are subjected to serious damage of crystal structure and oxidation. The oxidation affects the metallurgical properties of the Bi-Sb-Te material and crystal structure, results in specimen's compactness. Here, we added an additional hydrogen reduction process to recover the ground B-Sb-Te powders by removing the oxidized part and restoring the thermoelectric properties of the pressed Bi-Sb-Te compound. The results show that the Bi-Sb-Te powders have a (00l) preferred orientation and the Bi2Te3 crystal reveals laminar structure. The pressed Bi-Sb-Te with (00l) preferred orientation has enhanced electricity conductivity and thermal conductivity as well as thermoelectric figure-of-merit.
|
author2 |
Liao, Chien-Neng |
author_facet |
Liao, Chien-Neng Lee, Tzu-Ting 李祖霆 |
author |
Lee, Tzu-Ting 李祖霆 |
spellingShingle |
Lee, Tzu-Ting 李祖霆 Characterization of Bi-Sb-Te powders prepared by wet bead milling |
author_sort |
Lee, Tzu-Ting |
title |
Characterization of Bi-Sb-Te powders prepared by wet bead milling |
title_short |
Characterization of Bi-Sb-Te powders prepared by wet bead milling |
title_full |
Characterization of Bi-Sb-Te powders prepared by wet bead milling |
title_fullStr |
Characterization of Bi-Sb-Te powders prepared by wet bead milling |
title_full_unstemmed |
Characterization of Bi-Sb-Te powders prepared by wet bead milling |
title_sort |
characterization of bi-sb-te powders prepared by wet bead milling |
publishDate |
2013 |
url |
http://ndltd.ncl.edu.tw/handle/96776317365959590797 |
work_keys_str_mv |
AT leetzuting characterizationofbisbtepowderspreparedbywetbeadmilling AT lǐzǔtíng characterizationofbisbtepowderspreparedbywetbeadmilling AT leetzuting shīshìzhūmófǎzàibisbterèdiàncáiliàozhìbèizhīyīngyòngyánjiū AT lǐzǔtíng shīshìzhūmófǎzàibisbterèdiàncáiliàozhìbèizhīyīngyòngyánjiū |
_version_ |
1718073769905356800 |